Electromagnetic induction type self-triggering linear transformer driver (LTD)

A linear transformer, electromagnetic induction technology, applied in electrical components, electronic switches, pulse processing and other directions, to achieve the effect of small size, low cost, good scalability

Inactive Publication Date: 2013-03-27
FUDAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, when LTD is applied to ultra-large devices, the number of switches that must be triggered synchronously reaches the order of 100,000, and the synchronous triggering of large array switches is a big challenge

Method used

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  • Electromagnetic induction type self-triggering linear transformer driver (LTD)
  • Electromagnetic induction type self-triggering linear transformer driver (LTD)
  • Electromagnetic induction type self-triggering linear transformer driver (LTD)

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Embodiment Construction

[0026] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.

[0027] The embodiments of the present invention can be applied to LTD devices of various scales, and the energy of the output pulse can be controlled by controlling the number of induction cavities, the size of the capacitor and the charging voltage.

[0028] An electromagnetic induction type self-triggering linear variable voltage drive source provided by the present invention is composed of a triggering induction chamber module 1, a common induction chamber module 2, and a self-triggering induction chamber module 3, and the three parts pass through the secondary central bus bar 107 connected in series, where:

[0029] figure 2 A schematic diagram of the circuit structure of the induction chamber 1 for generating synchronous trigger pulses is shown. The structure of this is basically the same as that of the common induction chamber module 1 , the ...

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Abstract

The invention belongs to the technical field of impulse power and particularly relates to an electromagnetic induction type self-triggering LTD. The LTD is composed of three parts of a triggering induction cavity module, an ordinary induction cavity module and a self-triggering induction cavity module. The three parts are connected in series through a secondary center convergence bar successively, the triggering induction cavity module forms several front stages of a channel of LTDs, the self-triggering induction cavity module forms several rear stages of the channel of the LTDs, and during working, only first stage induction cavity modules of the induction cavity module which are triggered synchronously are needed to be triggered, the whole channel of the LTDs can be triggered. According to the drive source, extra signals needed to be triggered are few, and the synchronization problem of extra signal triggering is not needed to be considered; the system reliability is high; extra triggering units are not needed, the size is small, the structure is compact, and the cost is low; and good expandability is provided, the number of the induction cavity module can be freely adjusted and no extra triggering number is needed to be added, and the LTD is applicable to large-scale LTD devices.

Description

technical field [0001] The invention belongs to the technical field of pulse power, and in particular relates to a linear transformer driver (Linear Transformer Driver, LTD) which uses electromagnetic induction to generate a trigger signal self-trigger switch to realize self-trigger. Background technique [0002] LTD is a new pulse power technology with the potential to become the next generation mainstream pulse power technology. Using LTD technology can generate high-power pulses with a rise time of about 100ns to directly drive the load without any pulse compression section. [0003] LTD consists of a switch and a capacitor (one-way charging) or two capacitors (positive and negative charging) in series to form a sub-block, several sub-blocks are connected in parallel to form a module, and several modules are connected in series through inductive superposition. If more current is required, multiple parallel connections can be used to build large-scale devices. The princi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H03K5/00H03K17/96
Inventor 刘克富邱剑涂卓麟
Owner FUDAN UNIV
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